Academic literature on the topic 'Anthothelidae'

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Journal articles on the topic "Anthothelidae"

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MOORE, KIRRILY M., PHILIP ALDERSLADE, and KAREN J. MILLER. "A taxonomic revision of Anthothela (Octocorallia: Scleraxonia: Anthothelidae) and related genera, with the addition of new taxa, using morphological and molecular data." Zootaxa 4304, no. 1 (2017): 1. http://dx.doi.org/10.11646/zootaxa.4304.1.1.

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A complete taxonomic revision of the genus Anthothela (Anthothelidae) and closely related taxa is presented herein, based on original type material of nominal species and additional specimens from multiple deep-water surveys. A multi-disciplinary approach was used, combining morphological characteristics such as colonial branching patterns, polyp structure, and sclerite form and arrangement, together with phylogenetic reconstructions using two mitochondrial gene regions (mtMutS and igr1–cox1). The genus Anthothela, with seven nominal species globally, is here divided into four genera, two of w
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Moore, Kirrily M., Philip Alderslade, and Karen J. Miller. "A taxonomic revision of Anthothela (Octocorallia: Scleraxonia: Anthothelidae) and related genera, with the addition of new taxa, using morphological and molecular data." Zootaxa 4304, no. 1 (2017): 1–212. https://doi.org/10.11646/zootaxa.4304.1.1.

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Moore, Kirrily M., Alderslade, Philip, Miller, Karen J. (2017): A taxonomic revision of Anthothela (Octocorallia: Scleraxonia: Anthothelidae) and related genera, with the addition of new taxa, using morphological and molecular data. Zootaxa 4304 (1): 1-212, DOI: 10.11646/zootaxa.4304.1.1
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Goh, Nigel K. C., and Peter K. L. Ng. "Notes On the Taxonomy and Ecology of Aliaporcellana Telestophila (Johnson, 1958) (Decapoda, Anomura, Porcellanidae), a Crab Commensal On the Gorgonian Solenocaulon." Crustaceana 69, no. 5 (1996): 652–61. http://dx.doi.org/10.1163/156854096x00655.

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AbstractThe taxonomy and ecology of the porcellanid crab, Aliaporcellana telestophila, is elaborated upon. Variations in the structure of the carapace and chelipeds are documented and figured. The species, previously thought to be a commensal of Telesto (Clavulariidae), is shown to be actually associated with another octocoral, Solenocaulon (Anthothelidae).
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Kocurko, M. J., and D. J. Kocurko. "Fossil Octocorallia of the Red Bluff Formation, Lower Oligocene, Mississippi." Journal of Paleontology 66, no. 4 (1992): 594–602. http://dx.doi.org/10.1017/s0022336000024458.

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An assemblage of well-preserved octocoral holdfasts and sclerites has been collected from the Red Bluff Formation at the Chickasawhay River, Wayne County, Mississippi. Seven families were identified, utilizing a collection of approximately 1,000 sclerites. Families represented are Telestidae, Nephtheidae, Anthothelidae, Paramuriceidae, Plexauridae, Virgulariidae, and Gorgoniidae. These families, with exception of the Gorgoniidae, are here reported for the first time as fossils from the Gulf Coast region. The collection represents one of the most diverse fossil octocoral assemblages known from
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Arantes, Renata C. M., and Medeiros Marcelo S. De. "Primeiro registro de Anthothela grandiflora (Sars, 1856) (Cnidaria, Octocorallia, Anthothelidae) no Brasil." Archivos do Museu Nacional do Rio de Janeiro 64 (June 6, 2006): 11–17. https://doi.org/10.5281/zenodo.13659464.

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Zhang, Yuanyuan, Junhong Liu, Dayong Shi, and Zheng Li. "Halogenated Compounds from Corals: Chemical Diversity and Biological Activities." Mini-Reviews in Medicinal Chemistry 19, no. 15 (2019): 1204–18. http://dx.doi.org/10.2174/1389557518666181113124015.

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: As important marine biological resources, corals produce a large amount of active organic compounds in their secondary metabolic processes, including numerous brominated, chlorinated, and iodinated compounds. These compounds, with novel structures and unique activities, guide the discovery and research of important lead compounds and novel biological mechanisms. Through a large number of literature surveys, this paper summarized a total of 145 halogenated secondary metabolites which were roughly divided into four major classes of terpenes, prostaglandins, steroids and alkaloids, and they wer
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Molina, Sandra L., Abel M. Forero, Farja I. Ayala, et al. "Metabolic Profiling of the Soft Coral Erythropodium caribaeorum (Alcyonacea: Anthothelidae) from the Colombian Caribbean Reveals Different Chemotypes." Marine Drugs 18, no. 1 (2019): 4. http://dx.doi.org/10.3390/md18010004.

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The Caribbean soft coral Erythropodium caribaeorum is a rich source of erythrolides—chlorinated briarane diterpenoids. These compounds have an ecological role as feeding deterrents, with a wide variation in their composition depending on the location where the sample is collected. In Colombia, this soft coral can be found at different locations in the Caribbean Sea including Santa Marta, Islas del Rosario, and Providencia—three environmentally different coral reef areas in the south and southwest Caribbean Sea. In order to evaluate differences in erythrolide composition, the metabolic profiles
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Excoffon, A. C., F. H. Acuña, M. O. Zamponi, and G. N. Genzano. "Reproduction of the temperate octocoral Tripalea clavaria (Octocorallia: Anthothelidae) from sublittoral outcrops off Mar del Plata, Argentina." Journal of the Marine Biological Association of the United Kingdom 84, no. 4 (2004): 695–99. http://dx.doi.org/10.1017/s0025315404009774h.

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In Mar del Plata the octocoral Tripalea clavaria is highly abundant on the different quartzitic rocky outcrops 18–20 m deep. Reproductive aspects of T. clavaria including its distribution and population structure have been described. Monthly sampling and observations were carried out by SCUBA diving from November 2000 to October 2001 at Banco del Medio (38°10′S 57°28′W). Tripalea clavaria occurs in patches; most colonies were 3·0–8·9 cm in height. The species appears to be a gonochoric brooder. Female colonies were significantly more abundant than males, which could be identified only from Feb
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Cairns, Stephen D., and Herman H. Wirshing. "Phylogenetic reconstruction of scleraxonian octocorals supports the resurrection of the family Spongiodermidae (Cnidaria, Alcyonacea)." Invertebrate Systematics 29, no. 4 (2015): 345. http://dx.doi.org/10.1071/is14063.

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The Scleraxonia are a group of octocorals that share similarities of their axis morphology. However, molecular phylogenetic analyses have shown this group to be largely polyphyletic. As a result, there is a significant lack of understanding of what constitutes distinct evolutionary units among members of this group, particularly at the family level. Prompted by the discovery of an unknown spongiodermid scleraxonian octocoral (Anthothelidae) from shallow water off the Pacific coast of lower Baja California, a phylogenetic analysis of the undescribed specimen, together with members of six sclera
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Carpinelli, Ágatha Nascimento, Ralf Tarciso Silva Cordeiro, Leonardo Mitrano Neves, Rodrigo Leão De Moura, and Marcelo Visentini Kitahara. "Erythropodium caribaeorum (Duchassaing and Michelotti, 1860) (Cnidaria Alcyonacea), an additional alien coral in the Southwestern Atlantic." Zootaxa 4822, no. 2 (2020): 175–90. https://doi.org/10.11646/zootaxa.4822.2.2.

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Carpinelli, Ágatha Nascimento, Cordeiro, Ralf Tarciso Silva, Neves, Leonardo Mitrano, Moura, Rodrigo Leão De, Kitahara, Marcelo Visentini (2020): Erythropodium caribaeorum (Duchassaing and Michelotti, 1860) (Cnidaria Alcyonacea), an additional alien coral in the Southwestern Atlantic. Zootaxa 4822 (2): 175-190, DOI: 10.11646/zootaxa.4822.2.2
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Dissertations / Theses on the topic "Anthothelidae"

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Lawler, Stephanie Nichole. "Characterization of Bacterial Diversity in Cold-Water Anthothelidae Corals." Scholar Commons, 2016. http://scholarcommons.usf.edu/etd/6295.

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Cold-water corals, similar to tropical corals, contain a diverse and complex microbial landscape. Comprised of vital microscopic organisms (i.e. bacteria, viruses, archaea), the coral microbiome is a driving factor in the proliferation and survival of the coral host. Bacteria provide essential biological functions within coral holobionts, facilitating increased nutrient utilization and production of antimicrobial compounds. To date, few cold-water octocoral species have been analyzed to explore the diversity and abundance of their microbial associates. For this study, 23 samples of the family
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